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[一种组件与透射成像光谱仪的设计]

[Design of a Component and Transmission Imaging Spectrometer].

作者信息

Sun Bao-peng, Zhang Yi, Yue Jiang, Han Jing, Bai Lian-fa

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 May;35(5):1414-8.

Abstract

In the reflection-based imaging spectrometer, multiple reflection(diffraction) produces stray light and it is difficult to assemble. To address that, a high performance transmission spectral imaging system based on general optical components was developed. On the basis of simple structure, the system is easy to assemble. And it has wide application and low cost compared to traditional imaging spectrometers. All components in the design can be replaced according to different application situations, having high degree of freedom. In order to reduce the influence of stray light, a method based on transmission was introduced. Two sets of optical systems with different objective lenses were simulated; the parameters such as distortion, MTF and aberration.were analyzed and optimized in the ZEMAX software. By comparing the performance of system with different objective len 25 and 50 mm, it can be concluded that the replacement of telescope lens has little effect on imaging quality of whole system. An imaging spectrometer is developed successfully according design parameters. The telescope lens uses double Gauss structures, which is beneficial to reduce field curvature and distortion. As the craftsmanship of transmission-type plane diffraction grating is mature, it can be used without modification and it is easy to assemble, so it is used as beam-split. component of the imaging spectrometer. In addition, the real imaging spectrometer was tested for spectral resolution and distortion. The result demonstrates that the system has good ability in distortion control, and spectral resolution is 2 nm. These data satisfy the design requirement, and obtained spectrum of deuterium lamp through calibrated system are ideal results.

摘要

在基于反射的成像光谱仪中,多次反射(衍射)会产生杂散光且难以组装。为了解决这一问题,开发了一种基于通用光学元件的高性能透射光谱成像系统。该系统结构简单,易于组装。与传统成像光谱仪相比,它具有广泛的应用和较低的成本。设计中的所有组件都可以根据不同的应用情况进行更换,具有很高的自由度。为了减少杂散光的影响,引入了一种基于透射的方法。对两组具有不同物镜的光学系统进行了模拟;在ZEMAX软件中分析并优化了诸如畸变、调制传递函数(MTF)和像差等参数。通过比较不同焦距为25mm和50mm物镜的系统性能,可以得出结论:更换望远镜头对整个系统的成像质量影响很小。根据设计参数成功研制出一台成像光谱仪。望远镜头采用双高斯结构,有利于减少场曲和畸变。由于透射型平面衍射光栅的工艺成熟,无需修改即可使用且易于组装,因此用作成像光谱仪的分光元件。此外,对实际的成像光谱仪进行了光谱分辨率和畸变测试。结果表明,该系统具有良好的畸变控制能力,光谱分辨率为2nm。这些数据满足设计要求,通过校准系统获得的氘灯光谱是理想的结果。

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